Study on Al-Si Based Nano-Si3N4 Composite Coating Prepared by Laser Cladding on AZ31B Magnesium Alloy

Applied laser ◽  
2015 ◽  
Vol 35 (2) ◽  
pp. 145-149
Author(s):  
葛亚琼 Ge Yaqiong ◽  
王文先 Wang Wenxian ◽  
崔泽琴 Cui Zeqin ◽  
王鑫 Wang Xin
2018 ◽  
Vol 435 ◽  
pp. 1187-1198 ◽  
Author(s):  
Liuqing Yang ◽  
Zhiyong Li ◽  
Yingqiao Zhang ◽  
Shouzheng Wei ◽  
Fuqiang Liu

2021 ◽  
Vol 10 (1) ◽  
pp. 870-882
Author(s):  
Qiuyang Zhang ◽  
Li Zhang ◽  
Minhui Yang ◽  
Qingxiang Hong ◽  
Zhongmei Yang ◽  
...  

Abstract As biodegradable orthopedic implant materials, magnesium alloys have been attracted enough attentions recently. However, too fast degradation in vivo, limited biocompatibilities, and insufficient antibacterial properties are three main challenges at present. In order to solve these problems, a multifunctional composite coating of Chi(Zn/BMP2)/HA was constructed on AZ31B magnesium alloy surface, successively by the alkali heating treatment, self-assembly of 16-phosphonyl-hexadecanoic acid, in situ immobilization of Chi(Zn/BMP2) (chitosan, zinc ions, and bone morphogenetic protein 2), and the deposition of HA (hydroxyapatite). The results of ATR-FTIR (attenuated total reflection Fourier transform infrared spectrum) spectra and elemental compositions confirmed that 16-phosphonyl-hexadecanoic acid, Chi(Zn/BMP2), and HA were successfully immobilized on the surface. Compared with Mg, Mg-OH, Mg-16, and Mg-Chi(Zn/BMP2), Mg-Chi(Zn/BMP2)/HA with the concave–convex structure surface significantly enhanced the hydrophilicity and corrosion resistance. On the other hand, Mg-Chi(Zn/BMP2)/HA coating also showed excellent biocompatibilities, which not only significantly promoted the osteoblast adhesion and proliferation, but also upregulated ALP and OCN expression of osteoblasts. Furthermore, due to the synergistic antibacterial effect of zinc ions and chitosan, Mg-Chi(Zn/BMP2)/HA showed a good antibacterial property against Escherichia coli (E. coli). Therefore, it can be said that the method used in this work has a good application prospect in improving the corrosion resistance, biocompatibility of magnesium alloys, and inhibiting infections against E. coli.


2014 ◽  
Vol 487 ◽  
pp. 199-203 ◽  
Author(s):  
Jian Zhang ◽  
Wen Ni Wu ◽  
Long Zhi Zhao

Laser cladding is an advanced material processing technology that has potential to improve the performances of metals. To improve the hardness and wear resistance of the surface of Magnesium alloy, SiC-316L composite coating on AZ31 magnesium alloy by laser cladding was generated, and the composition and properties analysis of the cladding coating were conducted. The results show that the laser cladding coating and the substrate achieve a good metallurgical bonding. The growth morphology of boundary is mainly branch dendrite.When the laser power is 1250 W, spot diameter is 2mm, scanning speed is 25 mm/s and average energy density is 2.5×104J, the cladding layer possesses the best micro-hardness, about 3 times as hard as the substrate.


2009 ◽  
Vol 66 ◽  
pp. 206-209
Author(s):  
Kai Jin Huang ◽  
Cun Shan Wang ◽  
Chang Sheng Xie

To improve the wear property of magnesium alloy, wear-resistant TiC and in-situ ZrC co-reinforced Zr-based amorphous composite coating has been fabricated on AZ91D magnesium alloy by laser cladding using mixed powders of Zr52.5Cu17.9Ni14.6Al10Ti5-TiC. The microstructure of the coating was characterized by XRD and SEM techniques. The wear resistance of the coating was evaluated under dry sliding wear test condition. The results show that the coating mainly consists of amorphous and different crystalline phases. The coating exhibits excellent wear resistance due to the recombination action of amorphous and crystalline phases, and the wear resistance improves further with the increase of TiC content. The main wear mechanism of the coating and the AZ91D sample are different, the former is abrasive wear and the latter is adhesive wear.


2012 ◽  
Vol 27 (6) ◽  
pp. 1042-1047 ◽  
Author(s):  
Zeqin Cui ◽  
Hongwei Yang ◽  
Wenxian Wang ◽  
Hongliang Wu ◽  
Bingshe Xu

Applied laser ◽  
2012 ◽  
Vol 32 (1) ◽  
pp. 13-17 ◽  
Author(s):  
冯辉 Feng Hui ◽  
崔泽琴 Cui Zeqin ◽  
王文先 Wang Wenxian ◽  
葛亚琼 Ge Yaqiong

2011 ◽  
Vol 38 (6) ◽  
pp. 0603020
Author(s):  
崔泽琴 Cui Zeqin ◽  
王文先 Wang Wenxian ◽  
吴宏亮 Wu Hongliang ◽  
许并社 Xu Bingshe

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